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IM-UFF:扩展用于交互式分子建模的通用力场。

IM-UFF: Extending the universal force field for interactive molecular modeling.

作者信息

Jaillet Léonard, Artemova Svetlana, Redon Stephane

机构信息

Univ. Grenoble Alpes, Inria, CNRS, Grenoble INP1, LJK, 38000 Grenoble, France.

Univ. Grenoble Alpes, Inria, CNRS, Grenoble INP1, LJK, 38000 Grenoble, France.

出版信息

J Mol Graph Model. 2017 Oct;77:350-362. doi: 10.1016/j.jmgm.2017.08.023. Epub 2017 Sep 5.

Abstract

The universal force field (UFF) is a broadly applicable classical force field that contains parameters for almost every atom type of the periodic table. This force field is non-reactive, i.e. the topology of the system under study is considered as fixed and no creation or breaking of covalent bonds is possible. This paper introduces interactive modeling-UFF (IM-UFF), an extension of UFF that combines the possibility to significantly modify molecular structures (as with reactive force fields) with a broad diversity of supported systems thanks to the universality of UFF. Such an extension lets the user easily build and edit molecular systems interactively while being guided by physics based inter-atomic forces. This approach introduces weighted atom types and weighted bonds, used to update topologies and atom parameterizations at every time step of a simulation. IM-UFF has been evaluated on a large set of benchmarks and is proposed as a self-contained implementation integrated in a new module for the SAMSON software platform for computational nanoscience available at http://www.samson-connect.net.

摘要

通用力场(UFF)是一种广泛适用的经典力场,它包含了元素周期表中几乎每种原子类型的参数。该力场是非反应性的,即所研究系统的拓扑结构被视为固定的,不可能形成或断裂共价键。本文介绍了交互式建模 - UFF(IM - UFF),它是UFF的扩展,结合了显著修改分子结构的可能性(如同反应性力场那样),同时由于UFF的通用性,支持的系统种类繁多。这种扩展让用户能够在基于物理的原子间力的引导下,轻松地交互式构建和编辑分子系统。这种方法引入了加权原子类型和加权键,用于在模拟的每个时间步更新拓扑结构和原子参数化。IM - UFF已在大量基准测试中进行了评估,并被提议作为一个独立的实现,集成到可在http://www.samson - connect.net获取的用于计算纳米科学的SAMSON软件平台的新模块中。

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